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A genetic program for deletion of foreign DNA from the mammalian genome

机译:从哺乳动物基因组中删除外源DNA的遗传程序

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摘要

Mammalian genomes are in constant jeopardy of invasion by prokaryotic DNA sequences because of their extensive exposure to bacteria; however, mammalian genomes appear to be protected from horizontal transmission of bacterial DNA. Transgenic mice provide a convenient model system for investigating the capacity of mammalian genomes in vivo to retain, silence, and/or reject foreign DNAs. We have previously reported that bacterial genes encoding the Lac repressor (lacI) are subject to sequence-dependent methylation and silencing in the transgenic mouse. In this paper, we report that bacterially derived lacI transgenes, but not their mammalian counterparts, can also be eliminated from the somatic cell DNA of affected animals. This somatic instability is heritable, strain-dependent, and conferred in cis. Our data are consistent with a model of genome surveillance in the mouse which can lead to loss of foreign DNA and which may be analogous to restriction-modification systems that maintain the integrity of the bacterial genome.
机译:哺乳动物基因组因其广泛暴露于细菌而不断受到原核DNA序列的入侵。但是,哺乳动物基因组似乎不受细菌DNA水平传播的影响。转基因小鼠为研究哺乳动物体内体内基因组保留,沉默和/或排斥外源DNA的能力提供了方便的模型系统。我们以前已经报道过,编码Lac阻遏物(lacI)的细菌基因在转基因小鼠中受到序列依赖性甲基化和沉默的影响。在本文中,我们报道细菌感染的lacI转基因,但不是哺乳动物的对应基因,也可以从患病动物的体细胞DNA中消除。这种体细胞的不稳定性是可遗传的,依赖于应变并顺式赋予。我们的数据与小鼠中的基因组监视模型一致,该模型可导致外源DNA丢失,并且可能类似于维持细菌基因组完整性的限制性修饰系统。

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